Electric Charges and Fields

Physics · Class 12

Simulation · Physics · Class 12

How fast a dipole's field falls off

From the lesson Electric dipole in Electric Charges and Fields. Change the values and watch what happens.

How fast a dipole's field falls offPhysics · Class 12

The idea behind it

NCERT §1.10

  • An electric dipole is two charges +q and −q, equal in size, held a distance 2a apart. Its dipole moment is p = q × 2a, a vector pointing from −q to +q. The SI unit is C m.
  • Its total charge is zero, but its field is not: the fields of +q and −q do not cancel exactly, and far away the dipole field falls off as 1/r³, faster than the 1/r² of a single charge.
  • On the axis at distance r from the centre: E = 2kp/r³ (r >> a), directed along p. The exact expression is E = k·4qar/(r² − a²)².
  • On the equatorial plane at distance r: E = kp/r³ (r >> a), directed opposite to p. The exact expression is E = k·2qa/(r² + a²)^(3/2).
  • At the same large distance, the axial field is twice the equatorial field.
  • Far fields depend on q and a only through the product p. A point dipole is the limit 2a → 0 with p kept finite; for it the 1/r³ formulas are exact.
  • Polar molecules such as H₂O have a permanent dipole moment because their centres of positive and negative charge do not coincide; CO₂ and CH₄ have zero dipole moment but acquire an induced one in an applied field.